Montreal Neurological Institute, McGill University, Montreal H3A 2B4, Canada.
Hum Mol Genet. 2011 Dec 1;20(23):4634-43. doi: 10.1093/hmg/ddr397. Epub 2011 Sep 1.
MTU1 (TRMU) is a mitochondrial enzyme responsible for the 2-thiolation of the wobble U in tRNA(Lys), tRNA(Glu) and tRNA(Gln), a post-transcriptional modification believed to be important for accurate and efficient synthesis of the 13 respiratory chain subunits encoded by mtDNA. Mutations in MTU1 are associated with acute infantile liver failure, and this has been ascribed to a transient lack of cysteine, the sulfur donor for the thiouridylation reaction, resulting in a mitochondrial translation defect during early development. A mutation in tRNA(Lys) that causes myoclonic epilepsy with ragged-red fibers (MERRF) is also reported to prevent modification of the wobble U. Here we show that mitochondrial translation is unaffected in fibroblasts from an MTU1 patient, in which MTU1 is undetectable by immunoblotting, despite the severe reduction in the 2-thiolation of mitochondrial tRNA(Lys), tRNA(Glu) and tRNA(Gln). The only respiratory chain abnormality that we could observe in these cells was an accumulation of a Complex II assembly intermediate, which, however, did not affect the level of the fully assembled enzyme. The identical phenotype was observed by siRNA-mediated knockdown of MTU1 in HEK 293 cells. Further, the mitochondrial translation deficiencies present in myoblasts from mitochondrial encephalomyopathy, lactic acidosis and stroke-like episode and MERRF patients, which are associated with defects in post-transcriptional modification of mitochondrial tRNAs, did not worsen following knockdown of MTU1 in these cells. This study demonstrates that MTU1 is not required for mitochondrial translation at normal steady-state levels of tRNAs, and that it may possess an as yet uncharacterized function in another sulfur-trafficking pathway.
MTU1(TRMU)是一种线粒体酶,负责 tRNA(Lys)、tRNA(Glu)和 tRNA(Gln)上的 wobble U 的 2-硫代,这是一种转录后修饰,被认为对准确和有效地合成由 mtDNA 编码的 13 个呼吸链亚基很重要。MTU1 突变与急性婴儿肝衰竭有关,这归因于半胱氨酸(硫代尿嘧啶反应的硫供体)的短暂缺乏,导致早期发育过程中线粒体翻译缺陷。据报道,导致肌阵挛性癫痫伴破碎红纤维(MERRF)的 tRNA(Lys)突变也阻止了 wobble U 的修饰。在这里,我们显示尽管线粒体 tRNA(Lys)、tRNA(Glu)和 tRNA(Gln)的 2-硫代严重减少,但在 MTU1 患者的成纤维细胞中,线粒体翻译不受影响,MTU1 无法通过免疫印迹检测到。我们在这些细胞中观察到的唯一呼吸链异常是复合物 II 组装中间产物的积累,然而,这不会影响完全组装酶的水平。在 HEK 293 细胞中通过 siRNA 介导的 MTU1 敲低也观察到了相同的表型。此外,线粒体脑肌病、乳酸酸中毒和卒中样发作和 MERRF 患者的肌母细胞中存在线粒体翻译缺陷,与线粒体 tRNA 的转录后修饰缺陷有关,但在这些细胞中敲低 MTU1 后并未恶化。这项研究表明,在 tRNA 的正常稳态水平下,MTU1 不是线粒体翻译所必需的,它可能在另一种硫转运途径中具有尚未表征的功能。